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Numerical Simulation of 3-D Fracture Behaviors on the FRP-Strengthened Concrete Structures

机译:FRP加固混凝土结构三维断裂行为的数值模拟

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摘要

A numerical code RFPA~(3D) (Realistic Failure Process Analysis) is used to simulate the crack initiation and propagation in FRP-strengthened concrete beam under external loading. In our model, the FRP-strengthened concrete is assumed to be a three-phase composite composed of concrete, FRP, and interface between them. The displacement-controlled loading scheme is used to simulate the complete failure process of FRP-strengthened concrete the numerical simulation of failure process of the specimens. It is found that the main failure mode is the interfacial debonding and the interfacial debonding may propagate either within the adhesive layer or through concrete layer in the vicinity of bond interface. The simulation results agree well with the experiment observations. The width of the FRP sheet is considered an important factor not only to significantly influence the debonding propagation type and crack distribution but also to control the ultimate load-capacity and ultimate strain. This study is focused on the failure process of the FRP-strengthened concrete beam and the effects of the width of FRP sheet on the failure mode and on the structural load-carrying capacity of concrete structures.
机译:数值模拟RFPA〜(3D)(实际破坏过程分析)用于模拟FRP加固混凝土梁在外部荷载下的裂纹萌生和扩展。在我们的模型中,将FRP加固的混凝土假定为由混凝土,FRP以及它们之间的界面组成的三相复合材料。位移控制加载方案用于模拟FRP加固混凝土的完整破坏过程,以及试样破坏过程的数值模拟。发现主要破坏模式是界面剥离,并且界面剥离可在粘合层内或在粘合界面附近的混凝土层中传播。仿真结果与实验结果吻合良好。 FRP片材的宽度被认为是重要的因素,不仅显着影响脱粘扩展类型和裂纹分布,而且还控制最终的承载能力和极限应变。这项研究的重点是玻璃纤维增​​强的混凝土梁的破坏过程,以及玻璃纤维板的宽度对破坏模式和混凝土结构的结构承载能力的影响。

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